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07 May 2026: MAINS CURRENT AFFAIRS | Complete Exam Preparation

MAINS Current Affairs includes India’s E-Waste Management & Mission Drishti: India’s Push for Sovereign Space Power

ENVIRONMENT

1. India’s E-Waste Management

Context: At the Paryavaran NITI Manthan conference, it was highlighted that India generated nearly 6.2 million tonnes of e-waste in FY24, raising concerns about the country’s waste management capacity.

About E-Waste in India

  • India produced around 2 million tonnes of electronic waste in FY24, and this figure is expected to rise to nearly 14 million tonnes by 2030.
  • However, formal recycling capacity is only around 2 million tonnes, creating a significant gap between waste generation and scientific processing.
  • Consequently, only about 10% of e-waste is recycled through formal channels, much lower than global standards.
  • E-waste contains nearly 33% recoverable metals, including valuable and critical minerals.
  • The estimated economic value embedded in India’s e-waste is around ₹51,000 crore, of which approximately ₹30,600 crore can be technically recovered.

What is E-Waste?

  • E-waste refers to discarded electrical and electronic products such as:
    • Mobile phones
    • Computers
    • Circuit boards
    • Household appliances
  • These wastes contain hazardous substances like:
    • Lead
    • Mercury
    • Cadmium
    • Brominated flame retardants
  • Improper disposal can result in serious environmental and health hazards.

India’s E-Waste Scenario

  • India is the third-largest producer of e-waste globally, after China and the United States.
  • According to the Global E-waste Monitor, e-waste generation increased from nearly 76 MMT in 2020 to over 6.19 MMT in 2024.

Major Sources of E-Waste

  • Computer equipment – ~65%
  • Large appliances & medical devices – ~15%
  • Telecom equipment – ~12%
  • Consumer electronics – ~8%

Challenges in E-Waste Management

Rapid Increase in E-Waste

  • Fast technological advancement and shorter product life cycles are continuously increasing e-waste generation.

Dominance of Informal Sector

  • Nearly 90–95% of e-waste is handled by the informal sector using unsafe methods such as acid leaching and open burning.

Inadequate Infrastructure

  • Limited authorised recycling facilities, weak collection mechanisms, and poor reverse logistics affect proper disposal.

Poor Tracking Mechanisms

  • Lack of reliable data and monitoring enables leakages into informal recycling networks.

Impact of Improper E-Waste Management

Water Pollution

  • Toxic chemicals such as cyanide and sulphuric acid contaminate water bodies.

Air Pollution

  • Burning plastics and lead emissions severely degrade air quality.

Soil Contamination

  • Hazardous materials seep into the soil, affecting agriculture and biodiversity.

Economic Loss

  • India loses significant amounts of recoverable critical minerals each year.
  • It is estimated that the country forfeits over ₹80,000 crore worth of recoverable metals annually.
  • Weak regulation also results in major tax revenue losses.

Key Initiatives for E-Waste Management

Extended Producer Responsibility (EPR)

  • Producers and importers are responsible for collection and disposal of end-of-life electronic products.

EPR E-Waste Portal

  • Developed by the Central Pollution Control Board (CPCB) for registration of producers, recyclers, and refurbishers.

E-Waste (Management) Rules, 2022

  • Revised framework notified by the Ministry of Environment, Forest and Climate Change to strengthen regulation and accountability.

E-Waste Clinic

  • India’s first e-waste clinic was established in Bhopal for segregation and scientific disposal of electronic waste.

Pan-India E-Waste Recycling Drive

  • Initiated by the Ministry of Mines under Special Campaign 5.0 (2025) to promote scientific recycling and resource recovery.

Basel Convention

  • The Basel Convention regulates transboundary movement and disposal of hazardous waste.

Key Provisions

  • Prior informed consent of importing countries
  • Environmentally sound waste management
  • Return of illegal waste shipments at exporter’s cost
  • Adopted in 1989 and enforced in 1992.
  • India is a signatory to the convention.

Way Forward

Strengthen Formal Recycling

  • Expand authorised recycling capacity and collection infrastructure.

Promote Circular Economy

  • Recover critical minerals and encourage reuse and refurbishment.

Integrate Informal Sector

  • Formalise and skill informal workers for safer recycling practices.

Improve Monitoring

  • Develop better tracking systems using digital technologies.

Public Awareness

  • Promote responsible consumer behaviour and disposal practices.

Conclusion

  • India’s growing e-waste challenge reflects the tension between rapid digital expansion and environmental sustainability.
  • The focus should move beyond mere disposal toward resource recovery, environmental protection, and green economic growth.

SPACE

2. Mission Drishti: India’s Push for Sovereign Space Power

Context

  • Mission Drishti, developed by Indian startup GalaxEye, was recently launched aboard the Falcon 9 from California.
  • The 190-kg satellite was placed into a 500-km orbit and is regarded as the world’s first operational OptoSAR imaging satellite.

About Mission Drishti

  • Mission Drishti is an earth-observation satellite developed by GalaxEye, a startup established in 2021.
  • It introduces OptoSAR technology, which combines:
    • Synthetic Aperture Radar (SAR) imaging
    • Seven-band multispectral Electro-Optical (EO) imaging
  • It is considered the first operational integration of EO and SAR systems on a single satellite platform.

Key Technological Features

  1. OptoSAR Technology
  • Integrates EO and SAR imaging to provide:
    • High visual clarity
    • All-weather imaging capability
    • Night-time observation support
  1. Synthetic Aperture Radar (SAR)
  • Uses radar waves for imaging.
  • Functions effectively during:
    • Cloud cover
    • Smoke
    • Rain and poor weather conditions
  • Produces radar-based monochromatic imagery.
  1. Electro-Optical (EO) Imaging
  • Captures images in visible and non-visible spectral bands.
  • Produces high-resolution optical images similar to regular satellite photographs.
  • However, performance is affected by clouds, pollution, and poor visibility.
  1. AI-Based Onboard Processing
  • Uses Nvidia’s Jetson Orin computing platform for in-orbit data processing.

Advantages

  • Faster image generation
  • Reduced reliance on ground stations
  • Better bandwidth utilisation
  • Real-time data fusion and improved accuracy
  • The satellite reportedly offers imagery resolution up to 5 metres.
  1. High Revisit Capability
  • Revisits the same location every four days, enabling:
    • Monitoring of dynamic changes
    • Detection of recent developments
    • Better temporal analysis

Significance for India

Strengthening Strategic Autonomy

  • India has traditionally relied on foreign satellite imagery providers like Maxar Technologies.
  • Mission Drishti enhances:
    • Sovereign control over strategic data
    • Independent surveillance capability
    • Border and maritime monitoring

Defence Applications

  • Useful for:
    • Border surveillance
    • Tracking military activity
    • Maritime domain awareness
    • Counter-terror operations
  • Supports India’s broader objective of strategic self-reliance.

Agriculture & Food Security

  • Enables:
    • Crop health monitoring
    • Precision farming
    • Soil moisture assessment
    • Early pest detection
  • SAR imaging is especially important in tropical regions like India, where cloud cover frequently affects optical imaging during monsoons.

Disaster Management

  • Assists in:
    • Flood mapping
    • Cyclone tracking
    • Forest fire assessment
    • Landslide monitoring
  • Radar-based imaging remains effective even during smoke or cloud cover.
  • Supports the objectives of the National Disaster Management Authority (NDMA).

Infrastructure & Urban Planning

  • Can help monitor:
    • Highways and railways
    • Illegal mining activities
    • Urban expansion
    • Smart city planning

Economic & Technological Impact

  • Promotes growth of India’s space economy
  • Encourages deep-tech innovation and startups
  • Expands export potential for satellite data services
  • Generates employment and investment opportunities

Related Space Sector Reforms in India

Space Sector Reforms (2020)

  • Opened the space sector to private participation.
  • Allowed private firms to build satellites, launch vehicles, and applications.

Indian National Space Promotion and Authorisation Centre (IN-SPACe)

  • Single-window agency under the Department of Space.
  • Facilitates approvals, testing, and access to ISRO infrastructure.

NewSpace India Limited (NSIL)

  • Commercial arm of ISRO promoting launch services, satellite services, and technology transfer.

Indian Space Policy 2023

  • Clarified roles of ISRO, NSIL, IN-SPACe, and private companies.
  • Encourages private investment and indigenous manufacturing.

Navigation with Indian Constellation

  • India’s indigenous satellite navigation system providing regional positioning services.

Growing Startup Ecosystem

  • Startups such as:
    • Skyroot Aerospace
    • Agnikul Cosmos
    • Pixxel
    • Bellatrix Aerospace
    • Dhruva Space
    • GalaxEye
  • Contributing in launch systems, propulsion, and satellite analytics.

Defence Space Agency (DSA)

  • Strengthens military space capabilities in surveillance, communication, and intelligence.

Challenges Ahead

Technological Challenges

  • Sensor miniaturisation
  • Managing large data streams
  • Maintaining imaging precision

Regulatory & Security Issues

  • Data privacy concerns
  • Cybersecurity threats
  • Strategic misuse of satellite data

Global Competition

  • Competition from firms like Maxar, Planet Labs, and Chinese commercial satellite companies.

Conclusion

  • Mission Drishti marks a major milestone in India’s space sector evolution.
  • By integrating EO and SAR technologies into a single platform, India has demonstrated the growing capability of its private space ecosystem.
  • The mission strengthens India’s strategic autonomy, disaster management capacity, agricultural intelligence, and commercial space ambitions while validating the success of recent space sector reforms.

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